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CN111826289A - Composite microbial inoculum for efficiently degrading livestock and poultry manure and application thereof - Google Patents

Composite microbial inoculum for efficiently degrading livestock and poultry manure and application thereof Download PDF

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CN111826289A
CN111826289A CN202010531859.0A CN202010531859A CN111826289A CN 111826289 A CN111826289 A CN 111826289A CN 202010531859 A CN202010531859 A CN 202010531859A CN 111826289 A CN111826289 A CN 111826289A
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microbial inoculum
poultry manure
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沈其荣
陈伟
施善巍
李�荣
何宙阳
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Taicang Lvfeng Agricultural Resources Development Co ltd
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Abstract

The invention discloses a composite microbial inoculum for efficiently degrading livestock and poultry manure and application thereof, and aims to further improve the composting effect of the livestock and poultry manure waste, develop a composite microbial inoculum containing Thermomyces lanuginosus NJAU-F4-11 and Geobacillus stearothermophilus B5, and provide composite microbial resources and technical support for livestock and poultry manure waste composting, wherein the composite microbial inoculum is applied to accelerating the degradation of the livestock and poultry manure waste. The composite microbial inoculum is used for degrading chicken manure, pig manure and sheep manure, the degradation rates after half a month respectively reach 18.24%, 23.80% and 30.25%, and the straw degradation rates of 2 single bacteria are respectively 15.36% and 14.69%, which are better than those of single bacteria treatment and blank treatment.

Description

Composite microbial inoculum for efficiently degrading livestock and poultry manure and application thereof
Technical Field
The invention relates to the field of agricultural microorganisms, in particular to a composite microbial inoculum for efficiently degrading livestock and poultry manure and application thereof.
Background
At present, the annual production amount of livestock and poultry feces in China is about 38 hundred million tons. Large-scale livestock and poultry manure is a huge organic matter and nutrient resource, but if the treatment is not good, serious negative effects can be brought to the environment and the life of residents. 2010, the first national pollution source census bulletin shows that the chemical oxygen demand discharged by livestock and poultry breeding industry reaches 1268.26 ten thousand tons, which accounts for 96 percent of the total agricultural source discharge amount; the total nitrogen and phosphorus emissions were 102.48 and 16.04 million tons, accounting for 38 and 56% of the total agricultural source emissions, respectively. At present, livestock and poultry manure treatment and resource utilization mainly have three modes, namely energy utilization, fertilizer utilization and industrial treatment, wherein the energy utilization and the fertilizer utilization are main directions. In recent years, domestic livestock and poultry breeding waste treatment and resource utilization work has achieved certain effects, but the comprehensive realization of energy regeneration and fertilizer utilization of livestock and poultry manure still faces a lot of practical difficulties. At present, the aerobic fermentation of the livestock and poultry manure to prepare the organic fertilizer is one of the main ways of recycling the livestock and poultry manure, but the components of the livestock and poultry manure are complex and contain components such as protein, fat, organic acid, cellulose, hemicellulose, inorganic salt and the like, and the degradation of the livestock and poultry manure by a single strain or simply combined composite flora is insufficient and slow at present. Therefore, the development of the microbial complex bacteria with the function of efficiently degrading the livestock and poultry breeding wastes is the focus of the current research.
The complex microorganism is a community composed of two or more microorganisms. Compared with a single microbial agent, the compound microbial agent has more advantages, can adapt to complex environments, and has stronger and more complete efficacy. The composite bacteria are used in practical production, so that the degradation of livestock and poultry breeding waste can be promoted, and the economic benefit and the ecological environmental benefit of enterprises are improved.
Disclosure of Invention
The object of the invention is: the invention aims to further improve the composting efficiency of livestock and poultry breeding waste, develops and develops a composite microbial inoculum for efficiently degrading livestock and poultry manure, provides flora resources and technical support for livestock and poultry breeding waste composting industry, and provides the composite microbial inoculum for efficiently degrading the livestock and poultry manure and application thereof.
The technical scheme is as follows:
the technical scheme provided by the invention can be realized by the following steps: a microbial composition, which consists of Thermomyces lanuginosus NJAU-F4-11 and Geobacillus stearothermophilus B5.
As further description of the microbial composition, the microbial composition is applied to preparation of the composite microbial inoculum for efficiently degrading livestock and poultry manure.
A composite microbial inoculum for efficiently degrading livestock and poultry feces comprises a composite microbial inoculum with the concentration of not less than 109The strain/ml of Thermomyces lanuginosus NJAU-F4-11 bacterial solution and the concentration of the strain is not less than 109CFU/ml of the geobacillus stearothermophilus B5 bacteria liquid is mixed in an equal volume ratio, wherein the concentrations of the bacteria liquids are the same.
As a further description of the complex microbial inoculum, the physiological characteristics of the complex microbial inoculum are as follows:
(1) the effective viable count of the strain is high, the liquid inoculation/inoculation body is adopted, and the concentration is 109More than one fungus per ml or CFU per ml (bacteria);
(2) the strain is high temperature resistant and can grow at a high temperature of 55 ℃;
(3) the strain is salt-resistant and can grow in a culture medium containing 15% of salt;
(4) the thermomyces lanuginosus NJAU-F4-11 belongs to the fungi of the genus hyphomycete, and the geobacillus stearothermophilus B5 belongs to the bacteria of the genus Bacillus, is harmless to crops and has no pathogenicity to human and animals;
(5) the activity of exo-beta-1, 4-glucanase reaches 11.45U, the activity of endo-beta-1, 4-glucanase reaches 11.26U, the activity of beta-glucosidase reaches 17.15U, the activity of neutral xylanase reaches 317.08U, the activity of filter paper enzyme reaches 0.44U, the activity of neutral protease reaches 335.01U, the activity of beta-amylase reaches 0.15U, and the activity of urease reaches 14.37U.
A preparation method of a composite microbial inoculum for efficiently degrading livestock and poultry feces comprises the following steps:
(1) inoculating the Thermomyces lanuginosus NJAU-F4-11 into a PDA liquid culture medium, and culturing at 55 ℃ and 170rpm for 2 days;
(2) inoculating the strain Geobacillus stearothermophilus B5 into an LB culture medium, and culturing at 55 ℃ and 170rpm for 2 days;
(3) after the culture was completed, the cells were collected by centrifugation at 4 ℃ and washed, and the concentration of the washed cells was adjusted to 10 with distilled water9CFU/ml or above, and fungus concentration of 109More than one bacterium per ml, and the concentration of each bacterium liquid is the same;
(4) and finally, uniformly mixing according to the volume ratio of 1:1 to obtain the composite microbial inoculum for efficiently degrading the livestock and poultry manure.
As further description of the complex microbial inoculum, the complex microbial inoculum is applied to the high-temperature degradation of livestock and poultry manure waste, and the specific application is as follows: weighing a certain amount of livestock and poultry manure, placing the livestock and poultry manure into a 250ml triangular flask, sucking each bacterial liquid with the same total amount, adding the bacterial liquids into the triangular flask, uniformly mixing, placing the mixture into an incubator at 55 ℃ for culture, drying a sample after 15 days, weighing, taking the livestock and poultry manure without inoculation as a reference, and calculating the degradation rate of the livestock and poultry manure by a weight loss method.
As further description of the microbial composition, the thermomyces lanuginosus is preserved in the common microorganism center of China Committee for culture Collection of microorganisms, the preservation address is the institute of microbiology of China academy of sciences, No. 3, West Lu No.1 Hospital, Chaoyang, Beijing, the preservation date is 2019, 6 and 24 days, and the preservation number is CGMCC NO. 18134.
As further description of the microbial composition, the Geobacillus stearothermophilus is preserved in the common microorganism center of China Committee for culture Collection of microorganisms, the preservation address is the microorganism institute of China academy of sciences, No. 3, West Lu 1, North Cheng, south China, in Beijing, the preservation date is 2017, and the preservation number is CGMCC NO. 14935.
The invention has the beneficial effects that 1, the invention provides a microbial compound microbial inoculum which is used for efficiently converting livestock and poultry breeding wastes into organic fertilizers. The microbial composite bacterial agent contains 2 kinds of single bacteria capable of degrading animal excrement effectively, and consists of 1 kind of fungi and 1 kind of bacteria. The secretase of the microorganisms in the process of degrading the livestock and poultry manure has complementary functions and obvious synergistic effect, so that the livestock and poultry manure is quickly and fully degraded under the high-temperature condition, the production efficiency of converting the culture manure into the organic fertilizer is improved, and the economic benefit and the ecological environmental benefit of an enterprise are improved.
2. The composite microbial agent is used for degrading the chicken manure, the degradation rate of the chicken manure after half a month reaches 18.24%, the degradation rate of the bacterial chicken manure is 17.66%, the degradation rate of the fungal chicken manure is 7.71%, and the degradation rate of the chicken manure after blank treatment is only 2.11%. Therefore, the degradation effect of the compound microbial inoculum on the chicken manure is better than that of single microbial treatment and blank treatment.
3. The composite microbial inoculum is used for degrading the pig manure, the degradation rate of the pig manure is 23.80 percent after half a month, the degradation efficiency of bacteria is 11.37 percent, the degradation efficiency of fungi is 9.71 percent, and the degradation rate of blank treatment is the lowest and is 3.57 percent. Therefore, the degradation effect of the compound microbial inoculum on the pig manure is better than that of single microbial treatment and blank treatment.
4. The composite microbial inoculum is used for degrading sheep manure, the degradation rate of the sheep manure is up to 30.25% after half a month, the degradation efficiency of bacteria is 27.65%, the degradation efficiency of fungi is 17.73%, and the degradation rate of blank treatment is the lowest, namely 7.09%. Therefore, the degradation effect of the composite microbial inoculum on the sheep manure is better than that of single microbial treatment and blank treatment.
Drawings
FIG. 1 is a graph of the effect of different combinations of bacterial populations on the degradation of chicken manure;
FIG. 2 is a graph of the effect of different flora combinations on the degradation of pig manure;
figure 3 is a graph of the effect of different flora combinations on the degradation of sheep manure.
Detailed Description
(I) obtaining of Single and Complex bacteria
Inoculating NJAU-F-4-11 fungus into PDA liquid culture medium, and culturing at 55 deg.C and 170rpm for 2 days; inoculating the strain Geobacillus stearothermophilus B5 into an LB culture medium, and culturing at 55 ℃ and 170rpm for 2 days; after the culture, the cells were collected by centrifugation at 4 ℃ and washed, and the concentration of the cells was adjusted to 10 with distilled water9CFU/ml or above, and fungus concentration of 109More than one bacterium per ml, and the concentration of each bacterium liquid is the same; and then uniformly mixing according to the volume ratio of 1:1 to obtain the livestock and poultry manure degradation composite microbial inoculum.
Wherein, the bacteria count the concentration through OD value, the fungus counts the spore number with the blood counting chamber.
(II) capability of single bacterium and compound bacterium to produce lignocellulose degrading enzyme, starch and protein hydrolase
Both individual and combination strains were tested for enzyme activity associated with the degradation of lignin, cellulose, starch and proteins using enzyme activity kits (Suzhou Keming Biotechnology Co., Ltd.).
(1) Beta-glucosidase (beta-GC) activity assay
The beta-glucosidase decomposes p-nitrobenzene-beta-D-glucopyranoside to generate p-nitrobenzene, the p-nitrobenzene has a maximum absorption peak at 400nm, and the activity of the beta-glucosidase is calculated by measuring the rising rate of the light absorption value.
beta-GC (nmol/min/ml) (. DELTA.A +0.0027) ÷ 0.00543 XV anti-total ÷ V-like ÷ T ═ 61.39X (. DELTA.A +0.0027)
Activity determination of exo-beta-1, 4-glucanase (C1)
The content of reducing sugar generated by degrading the microcrystalline cellulose catalyzed by exo-beta-1, 4-glucanase is measured by a 3, 5-dinitrosalicylic acid method.
C1(ug/min/ml) 1000 × (. DELTA.A +0.0673) ÷ 6.4078 XV anti-total ÷ V-like ÷ T ═ 14.305 × (. DELTA.A +0.0673)
Determination of endo-beta-1, 4-glucanase (Cx) Activity
The content of reducing sugar generated by degrading the endo-beta-1, 4-glucanase catalyzed by the carboxymethyl cellulose sodium is measured by a 3, 5-dinitrosalicylic acid method.
Cx (ug/min/ml) 1000 × (. DELTA.A +0.0673) ÷ 6.4078 × V anti-total ÷ V-like ÷ T14.305 × (. DELTA.A +0.0673)
(4) Filter paper enzyme (FPA) activity assay
Reducing sugar generated by filter paper enzyme hydrolysis filter paper and 3, 5-dinitrosalicylic acid can generate a reddish brown amino compound, the maximum light absorption is realized at 540nm, the color depth of reaction liquid is in direct proportion to the amount of the reducing sugar in a certain range, and the activity of the filter paper enzyme can be measured and calculated.
FPA (U/ml) (. DELTA.A +0.0255) ÷ 0.2805 XV anti-total/V-like/T ═ 0.416X (. DELTA.A +0.0255)
(5) Determination of Activity of neutral xylanase (NEX)
NEX catalyzes xylan to be degraded into reducing oligosaccharide and monosaccharide in a neutral environment, the degrading oligosaccharide and monosaccharide further react with 3, 5-dinitrosalicylic acid under the condition of boiling water bath to generate color development, a characteristic absorption peak is formed at 540nm, the color depth of reaction liquid is in direct proportion to the amount of reducing sugar generated by enzymolysis, and the activity of NEX can be calculated by measuring the rate of increase of the light absorption value of the reaction liquid at 540 nm.
NEX(nmol/min/ml)=(△A-0.00058)÷1.6904÷150÷T×106=657×(△A-0.00058)
Activity assay for alpha-amylase (alpha-AL) and beta-amylase (beta-AL)
Reducing sugar reduces 3, 5-dinitrosalicylic acid to generate a brownish red substance. Alpha-amylase is not acid tolerant and beta-amylase is not heat tolerant. According to the above characteristics, the activity of another amylase can be determined by inactivating one of them.
Alpha-amylase (mg/min/ml) (. DELTA.A +0.1778) ÷ 3.7215 XV anti-total ÷ V-like ÷ T ═ 0.1075 × (. DELTA.A +0.1778)
Total amylase (mg/min/ml) × 5 × (. DELTA.A +0.1778) ÷ 3.7215 XV anti-total ÷ V-like ÷ T ═ 0.5375 × (. DELTA.A 0+0.1778)
Beta-amylase (mg/min/ml) ═ Total amylase Activity-alpha-amylase Activity
(7) Determination of Neutral Protease (NP) Activity
Under neutral conditions, NP catalyzes casein to hydrolyze tyrosine; under alkaline conditions, tyrosine reduces phosphomolybdic acid compounds to generate tungsten blue, and a characteristic absorption peak is shown at 680 nm.
NP (nmol/min/ml) ═ C standard × Δ A ÷ Δ A standard × V inverse total ÷ V1 ÷ T ═ 125 × Δ A ÷ Δ A standard
(8) Urease (UE) viability assay
And determining NH3-N generated by urea hydrolysis by urease by adopting an indophenol blue colorimetric method.
UE (ug/min/ml) (. DELTA.A-0.0373) ÷ 0.0915 × 10 × V anti-total ÷ V-like ÷ T ═ Δ A-0.0373) × 27.32
Wherein: v, reverse total: the total volume of the reaction system; and V sample: adding the volume of the sample into the reaction system; v1 is added into the volume of the crude enzyme liquid in the reaction system; t: reaction time; a: measuring the difference of the absorbance values of the group and the control group; Δ A0: the difference of the light absorption values of the total amylase determination group and the control group; c, standard substance: 0.25 mu mol/ml standard tyrosine solution.
According to the determination, the following results are obtained: the enzyme activities of different thermophilic bacterial strains, single bacteria and combined bacteria at 55 ℃ are shown in table 1. In all treatments, the enzyme activity of the combined bacteria (B5+ NJAU-F4-11) is generally higher than that of all single bacteria combined into the composite bacteria. Compared with the single bacterium B5, the beta-GC, CX, FPA, beta-AL, NP and UE of the combined bacterium are all remarkably improved. Compared with single bacterium NJAU-F4-11, the beta-GC, C1, FPA, NP and UE of the combined bacterium are all remarkably improved. The results show that compared with single bacteria B5 and NJAU-F4-11, the composite bacteria containing B5+ NJAU-F4-11 has better hydrolysis capability on starch, neutral protein, lignin, cellulose and urea.
TABLE 1 enzyme activities of different thermophilic strains of single and combined bacteria at 55 deg.C
Figure BDA0002535587450000071
Injecting, wherein the combined bacteria are formed by mixing B5 and NJAU-F4-11 in equal volume and equal concentration; beta-GC represents beta-glucosidase, C1 represents exo-beta-1, 4 glucanase, Cx represents endo-beta-1, 4 glucanase, FPA represents filter paper enzyme, NEX represents neutral xylanase, beta-AL represents beta-amylase, NP represents neutral protease, and UE represents urease.
Example 1: degradation effect of single bacterium and compound bacterium on chicken manure
Weighing a certain amount of chicken manure, placing the chicken manure into a 250ml triangular flask, sucking each bacterial liquid with the same total amount, adding the bacterial liquids into the triangular flask, uniformly mixing, placing the mixture into a 55-degree incubator for culture, drying a sample after 15 days, weighing, and calculating the degradation rate of the chicken manure by a weight loss method by taking the chicken manure without inoculating strains as a reference.
Results and analysis
The effect of different flora combinations on the degradation of chicken manure is shown in figure 1. In all treatments, the degradation rate of chicken manure of the combined bacteria (NJAU-F4-11+ B5) is 18.24 percent at the highest, the degradation rate of chicken manure of B5 is 17.66 percent, the degradation rate of chicken manure of NJAU-F4-11 is 7.71 percent, and the degradation rate of chicken manure of blank treatment is only 2.11 percent. Compared with blank treatment, single bacterium B5 treatment and single bacterium NJAU-F4-11 treatment, the degradation effect of the combined bacterium (B5+ NJAU-F4-11) on the chicken manure is improved by 16.13%, 10.53% and 0.58% respectively.
According to the indoor chicken manure degradation result, the degradation effect of the composite bacteria containing NJAU-F4-11+ B5 on the chicken manure is optimal.
Example 2: degradation effect of single bacterium and compound bacterium on pig manure
The chicken manure was changed to pig manure, and the remaining operation steps were the same as in example 1.
Results and analysis
The effect of different flora combinations on the degradation of pig manure is shown in figure 2. In all treatments, the degradation rate of the combined bacteria (NJAU-F4-11+ B5) is the highest and is 23.80%, the degradation rate of the single bacteria B5 is 11.37%, the degradation rate of the single bacteria NJAU-F4-11 is 9.71%, and the degradation rate of the blank treatment is the lowest and is 3.57%. Compared with blank treatment, single bacterium B5 treatment and single bacterium NJAU-F4-11 treatment, the degradation effect of the combined bacterium (NJAU-F4-11+ B5) on the pig manure is remarkably improved by 20.23%, 12.44% and 14.10% respectively.
According to the indoor pig manure degradation result, the degradation effect of the composite flora containing NJAU-F4-11+ B5 on the pig manure is optimal.
Example 3: degradation effect of single bacterium and composite bacterium on sheep manure
The chicken manure was changed to sheep manure, and the remaining operation steps were the same as in case 1.
Results and analysis
The effect of different flora combinations on the degradation of sheep manure is shown in figure 3. In all treatments, the degradation rate of the combined bacteria (NJAU-F4-11+ B5) is the highest and is 30.25%, the degradation rate of the single bacteria B5 is 27.65%, the degradation rate of the single bacteria NJAU-F4-11 is 17.73%, and the degradation rate of the blank treatment is the lowest and is 7.09%. Compared with blank treatment, single bacterium B5 treatment and single bacterium NJAU-F4-11 treatment, the combined bacterium (NJAU-F4-11+ B5) has obviously improved degradation effect on sheep manure, and is respectively improved by 23.15%, 2.60% and 12.53%.
According to the indoor sheep manure degradation result, the degradation effect of the composite flora containing NJAU-F4-11+ B5 on sheep manure is optimal.
According to the embodiment 1, the embodiment 2 and the embodiment 3, the microbial inoculum containing the compound flora (NJAU-F4-11+ B5) has a good decomposition effect on livestock and poultry manure, can promote the degradation of livestock and poultry wastes, and improves the economic benefit and the ecological environmental benefit of enterprises.
The technical solutions described above only represent the preferred technical solutions of the present invention, and some possible modifications to some parts of the technical solutions by those skilled in the art all represent the principles of the present invention, and fall within the protection scope of the present invention.

Claims (8)

1. A microbial composition, which consists of Thermomyces lanuginosus NJAU-F4-11 and Geobacillus stearothermophilus B5.
2. The microbial composition according to claim 1, wherein the microbial composition is applied to preparation of a composite microbial agent for efficiently degrading livestock and poultry manure.
3. The composite microbial inoculum for efficiently degrading the livestock and poultry manure is characterized by comprising the composite microbial inoculum with the concentration of not less than 109The strain/ml of Thermomyces lanuginosus NJAU-F4-11 bacterial solution and the concentration of the strain is not less than 109CFU/ml of the geobacillus stearothermophilus B5 bacteria liquid is mixed in an equal volume ratio, wherein the concentrations of the bacteria liquids are the same.
4. The complex microbial inoculant for efficiently degrading livestock and poultry manure according to claim 3, wherein the physiological characteristics of the complex microbial inoculant are as follows:
(1) the effective viable count of the strain is high, the liquid inoculation/inoculation body is adopted, and the concentration is 109More than one fungus per ml or CFU per ml (bacteria);
(2) the strain is high temperature resistant and can grow at a high temperature of 55 ℃;
(3) the strain is salt-resistant and can grow in a culture medium containing 15% of salt;
(4) the thermomyces lanuginosus NJAU-F4-11 belongs to the fungi of the genus hyphomycete, and the geobacillus stearothermophilus B5 belongs to the bacteria of the genus Bacillus, is harmless to crops and has no pathogenicity to human and animals;
(5) the activity of exo-beta-1, 4-glucanase reaches 11.45U, the activity of endo-beta-1, 4-glucanase reaches 11.26U, the activity of beta-glucosidase reaches 17.15U, the activity of neutral xylanase reaches 317.08U, the activity of filter paper enzyme reaches 0.44U, the activity of neutral protease reaches 335.01U, the activity of beta-amylase reaches 0.15U, and the activity of urease reaches 14.37U.
5. A preparation method of a composite microbial inoculum for efficiently degrading livestock and poultry feces is characterized by comprising the following steps:
(1) inoculating the Thermomyces lanuginosus NJAU-F4-11 into a PDA liquid culture medium, and culturing at 55 ℃ and 170rpm for 2 days;
(2) inoculating the strain Geobacillus stearothermophilus B5 into an LB culture medium, and culturing at 55 ℃ and 170rpm for 2 days;
(3) after the culture was completed, the cells were collected by centrifugation at 4 ℃ and washed, and the concentration of the washed cells was adjusted to 10 with distilled water9CFU/ml or above, and fungus concentration of 109More than one bacterium per ml, and the concentration of each bacterium liquid is the same;
(4) and finally, uniformly mixing according to the volume ratio of 1:1 to obtain the high-efficiency degradation composite microbial inoculum for the livestock and poultry manure, wherein the bacteria calculate the concentration through OD value, and the fungi count the number of spores through a blood counting chamber.
6. The composite microbial inoculum for efficiently degrading livestock and poultry manure according to claim 3, which is applied to high-temperature degradation of livestock and poultry manure waste.
7. The microbial composition of claim 1, wherein the thermomyces lanuginosus NJAU-F4-11 is deposited at the China general microbiological culture Collection center (CGMCC) with the collection number of CGMCC No. 18134.
8. The microbial composition of claim 1, wherein the Geobacillus stearothermophilus B5 is deposited in the China general microbiological culture Collection center (CGMCC) with the collection number of CGMCC No. 14935.
CN202010531859.0A 2020-06-11 2020-06-11 Composite microbial inoculum for efficiently degrading livestock and poultry manure and application thereof Pending CN111826289A (en)

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CN116042495A (en) * 2023-04-03 2023-05-02 山东健源生物科技有限公司 Composite microbial preparation for degrading livestock and poultry manure and application thereof

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CN110272305A (en) * 2019-05-05 2019-09-24 南京农业大学 A kind of botanical material During High-Temperature Composting method and its used in emptins
CN111334452A (en) * 2019-09-17 2020-06-26 南京农业大学 Compound bacterium agent for degrading livestock and poultry manure and application thereof

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CN110272305A (en) * 2019-05-05 2019-09-24 南京农业大学 A kind of botanical material During High-Temperature Composting method and its used in emptins
CN111334452A (en) * 2019-09-17 2020-06-26 南京农业大学 Compound bacterium agent for degrading livestock and poultry manure and application thereof

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CN116042495A (en) * 2023-04-03 2023-05-02 山东健源生物科技有限公司 Composite microbial preparation for degrading livestock and poultry manure and application thereof
CN116042495B (en) * 2023-04-03 2023-06-09 山东健源生物科技有限公司 Composite microbial preparation for degrading livestock and poultry manure and application thereof

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